An optical transmission link to transmit 50 Mb/s is shown as in Figure 4. The output power of the laser diode is 10 dBm and the insertion loss of the 50/50 coupler is 3.7 dB. The 50/50 coupler is used to split the power into two destinations: Receiver A and Receiver B. The link connection requires connectors and splicing in between the link. Given that, the connector loss is 3.5 dB, splicing loss is 4.0 dB and fiber attenuation is 1.5 dB/km. Each link to the receivers will have a 6- dB system margin.

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Question 3:
An optical transmission link to transmit 50 Mb/s is shown as in Figure 4. The output power of the
laser diode is 10 dBm and the insertion loss of the 50/50 coupler is 3.7 dB. The 50/50 coupler is
used to split the power into two destinations: Receiver A and Receiver B. The link connection
requires connectors and splicing in between the link. Given that, the connector loss is 3.5 dB,
splicing loss is 4.0 dB and fiber attenuation is 1.5 dB/km. Each link to the receivers will have a 6-
dB system margin.
H
Laser Diode (LD)
Connector
50%
50/50 Coupler/Output 1
Output 2
50%
9 km
Splice
Connector Splice
17 km
Figure 4: Optical transmission link
|Receiver A
Photodetector (PD)
Receiver B
Photodetector (PD)
Transcribed Image Text:Question 3: An optical transmission link to transmit 50 Mb/s is shown as in Figure 4. The output power of the laser diode is 10 dBm and the insertion loss of the 50/50 coupler is 3.7 dB. The 50/50 coupler is used to split the power into two destinations: Receiver A and Receiver B. The link connection requires connectors and splicing in between the link. Given that, the connector loss is 3.5 dB, splicing loss is 4.0 dB and fiber attenuation is 1.5 dB/km. Each link to the receivers will have a 6- dB system margin. H Laser Diode (LD) Connector 50% 50/50 Coupler/Output 1 Output 2 50% 9 km Splice Connector Splice 17 km Figure 4: Optical transmission link |Receiver A Photodetector (PD) Receiver B Photodetector (PD)
b) Determine the output power of the 50/50 coupler at Output 1 and Output 2.
c) Determine the power received at both Receiver A and Receiver B.
d) Sketch the link power budget using a figure of Power Level (dBm) versus Distance (km)
from Output 2 to Receiver B.
Transcribed Image Text:b) Determine the output power of the 50/50 coupler at Output 1 and Output 2. c) Determine the power received at both Receiver A and Receiver B. d) Sketch the link power budget using a figure of Power Level (dBm) versus Distance (km) from Output 2 to Receiver B.
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